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Two-Dimensional Water Environment Numerical Simulation Research Based on EFDC in Mudan River, Northeast China

机译:基于EFDC的牡丹江二维水环境数值模拟研究。

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This paper establishes a two-dimensional (2D)numerical simulation model for water environment of Mudan River using hydrodynamic and water quality modelbased on EFDC. It simulates the migration of CODCr andNH3-N in urban sections of the trunk stream in glacial andnon-glacial periods. It also calibrates and verifies bedroughness and integrated attenuation coefficient ofpollutants. As the findings reveal, bed roughness andintegrated attenuation coefficient of pollutants varysignificantly in icebound and non-icebound seasons:roughness coefficient in icebound season is higher than thatin non-icebound season while attenuation rate in iceboundseason is lower than that in non-icebound season. Inaddition, main factors for attenuation rate drop in iceboundseason are, according to simulation results, temperaturedrop, upstream inflow decrease, and ice layer cover. Icesheet is the major contributor of roughness increase. It isfeasible to apply the 2D water environment numerical modelestablished in this paper to urban sections of Mudan Rivertrunk stream.
机译:利用基于EFDC的水动力和水质模型,建立了牡丹江水环境二维(2D)数值模拟模型。它模拟了冰川期和非冰川期CODCr和NH3-N在干流市区的迁移。它还可以校准和验证污染物的残渣和积分衰减系数。结果表明,冰期和非冰期的床面粗糙度和污染物的综合衰减系数差异显着:冰期的粗糙度系数高于非冰期的粗糙度,冰期的衰减率低于非冰期的衰减率。另外,根据模拟结果,冰封季节衰减率下降的主要因素是温度下降,上游入流减少和冰层覆盖。冰盖是粗糙度增加的主要因素。将本文建立的二维水环境数值模型应用到牡丹江干流市区中是可行的。

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